Arterial Smooth Muscle Cell Heterogeneity: Implications for Atherosclerosis and Restenosis Development

ABSTRACT—During atheromatous plaque formation or restenosis after angioplasty, smooth muscle cells (SMCs) migrate from the media toward the intima, where they proliferate and undergo phenotypic changes. The mechanisms that regulate these phenomena and, in particular, the phenotypic modulation of int...

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Published inArteriosclerosis, thrombosis, and vascular biology Vol. 23; no. 9; pp. 1510 - 1520
Main Authors Hao, Hiroyuki, Gabbiani, Giulio, Bochaton-Piallat, Marie-Luce
Format Journal Article
LanguageEnglish
Published Philadelphia, PA American Heart Association, Inc 01.09.2003
Hagerstown, MD Lippincott
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Summary:ABSTRACT—During atheromatous plaque formation or restenosis after angioplasty, smooth muscle cells (SMCs) migrate from the media toward the intima, where they proliferate and undergo phenotypic changes. The mechanisms that regulate these phenomena and, in particular, the phenotypic modulation of intimal SMCs have been the subject of numerous studies and much debate during recent years. One view is that any SMCs present in the media could undergo phenotypic modulation. Alternatively, the seminal observation of Benditt and Benditt that human atheromatous plaques have the features of a monoclonal or an oligoclonal lesion has led to the hypothesis that a predisposed, medial SMC subpopulation could play a crucial role in the production of intimal thickening. The presence of a distinct SMC population in the arterial wall implies that under normal conditions, SMCs are phenotypically heterogeneous. The concept of SMC heterogeneity is gaining wider acceptance, as shown by the increasing number of publications on this subject. In this review, we discuss the in vitro studies that demonstrate the presence of distinct SMC subpopulations in arteries of various species, including humans. Their specific features and their regulation will be highlighted. Finally, the relevance of an atheroma-prone phenotype to intimal thickening formation will be discussed.
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ISSN:1079-5642
1524-4636
1524-4636
DOI:10.1161/01.ATV.0000090130.85752.ED